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Crack detection in plated T-joints through vibration techniques

机译:通过振动技术检测镀覆T形接头中的裂纹

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摘要

The study presents investigations on different aspects of vibration techniques for crack detection in welded T-joints; it incorporates experimental testing, finite element analysis, system identification and model updating procedures in developing a methodology for detecting and quantifying fatigue cracks in plated T-joints. The experimental study measured modal parameter changes that occur in a structure as a fatigue crack grows in the critical region of plated T-joints. The finite element model was generated and refined by comparing the frequency response functions (FRFs) obtained from the finite element (FE) model and the intact experimental model. Finally, combining the experimental and finite element results and utilizing a model updating procedure a methodology was developed to find out the location, length and depth of the crack at different intervals of fatigue crack growth; the methodology used the correlation between the finite element and experimental frequency response functions. Local strain frequency response functions, which are very sensitive to cracking, were used as the objective functions in the model updating procedure. Perturbation based updating procedure, which incrementally modifies the design parameters (i.e. crack location, length and depth) at every iteration, was used to minimize the error in FRFs between the experimental and finite element models. Changes in strain mode shapes were used to determine the approximate location of the crack initially; subsequent estimation of crack profile was carried out utilizing model updating procedure and using line spring (crack) elements to model the crack.;The crack location, length and depth measured from five experimental T-joint specimens have been correctly identified and quantified by this methodology. To the author's best knowledge, the application of this method to a plate-type structure and the accuracy that could be achieved have never been investigated in the published literature so far. At the conclusion of this study, a promising method for crack detection is provided. It is believed that this will help in the further development of new vibration-based NDE techniques for industrial applications.
机译:该研究对振动技术的不同方面进行了研究,以检测焊接T型接头中的裂纹。它结合了实验测试,有限元分析,系统识别和模型更新程序,从而开发出了一种检测和量化镀T形接头疲劳裂纹的方法。实验研究测量了随着疲劳裂纹在镀覆T形接头的关键区域内增长而在结构中发生的模态参数变化。通过比较从有限元(FE)模型和完整的实验模型获得的频率响应函数(FRF),生成并完善了有限元模型。最后,结合实验结果和有限元结果,并利用模型更新程序,开发了一种方法来找出在疲劳裂纹扩展的不同间隔处裂纹的位置,长度和深度。该方法使用了有限元与实验频率响应函数之间的相关性。对裂纹非常敏感的局部应变频率响应函数被用作模型更新过程中的目标函数。基于扰动的更新程序可在每次迭代时递增地修改设计参数(即裂纹位置,长度和深度),以最大程度地减小实验模型和有限元模型之间FRF的误差。应变模式形状的变化最初用于确定裂纹的大致位置。随后使用模型更新程序并使用线弹簧(裂纹)元素对裂纹进行建模,以估计裂纹轮廓;通过该方法正确识别并量化了五个实验T型接头样品的裂纹位置,长度和深度。就作者所知,到目前为止,尚未在公开文献中研究这种方法在板状结构上的应用以及可获得的精度。在这项研究的结论,提供了一种有前途的裂纹检测方法。相信这将有助于进一步开发用于工业应用的新的基于振动的NDE技术。

著录项

  • 作者

    Chen, Yin.;

  • 作者单位

    Memorial University of Newfoundland (Canada).;

  • 授予单位 Memorial University of Newfoundland (Canada).;
  • 学科 Civil engineering.;Mechanical engineering.
  • 学位 Ph.D.
  • 年度 1996
  • 页码 187 p.
  • 总页数 187
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 普通生物学;
  • 关键词

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